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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Error Analysis for Digital Beamforming Synthetic Aperture Radars: A Comparison of Phased Array and Array-Fed Reflector Systems
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Error Analysis for Digital Beamforming Synthetic Aperture Radars: A Comparison of Phased Array and Array-Fed Reflector Systems

机译:数字波束成形合成孔径雷达的误差分析:相控阵和阵列反射器系统的比较

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Modern synthetic aperture radar (SAR) systems for Earth observation from space employ innovative hardware concepts. The key idea is to digitize the output of a multielement antenna almost immediately after the receiver and to dynamically process these data either onboard the radar satellite in real time or on the ground. This article addresses the performance of such digital beamforming (DBF) systems in the presence of phase and magnitude errors in the digital channels. For this, analytic expressions for the sensitivity and range ambiguity performance are derived. These equations are kept general so that they are valid for both planar array antennas and array-fed reflector antennas. It is an important objective of this article to compare these two antenna types to each other. A major conclusion from this analysis is that direct-radiating phased arrays are inherently more susceptible to random phase and magnitude errors compared with array-fed reflector antenna-based systems. This manifests itself in a more rapid degradation of the imaging performance with phased array antennas.
机译:现代合成孔径雷达(SAR)用于地球观测的空间采用创新的硬件概念。关键思想是在接收器之后立即将多元首天线的输出数字化,并在实时或地面上在雷达卫星上动态地处理这些数据。本文在数字信道中存在相位和幅度误差的存在下,解决了这种数字波束成形(DBF)系统的性能。为此,导出了用于灵敏度和范围歧义性能的分析表达式。这些等式保持一般,使得它们对平面阵列天线和阵列供给的反射器天线有效。本文的一个重要目标是将这两个天线类型相互比较。该分析的主要结论是,与基于阵列供给反射器天线的系统相比,直接辐射相位阵列本质上更容易受到随机相位和幅度误差。这在通过相位阵列天线的成像性能更快地劣化的情况下表现出来。

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